DocumentCode :
2357918
Title :
Optimal multi-user space time scheduling for wireless communications
Author :
Lau, Vincent K N ; Liu, Youjian ; Chen, Tai Ann
Author_Institution :
Lucent Technol. Bell Labs, USA
Volume :
4
fYear :
2002
fDate :
2002
Firstpage :
1939
Abstract :
The multi-user MIMO space time scheduling problem is the prime focus of the paper. Optimizing the link level performance of the MIMO system does not always imply achieving scheduling level optimization. Therefore,design optimization across the link layer and the scheduling layer is very important to exploit fully the temporal and spatial dimensions of the communication channel. We address the design of the optimal space time scheduler for a multi-user MIMO system based on an information theoretical approach. We assume a partial feedback channel, namely a scaler rate-feedback channel, is available to the transmitter, but the full channel matrix is unknown to the transmitter. With the partial feedback, we find that the optimal resource allocation strategy is water-filling in both the temporal domain and spatial domain. The optimal scheduler should allocate all the power to at most nR users at any particular instant. The optimal scheduler performance depends on the total number of users (K), the number of receive antennas at the base station (nR), and the number of transmit antennas at the mobile (nT). The scheduling gain increases with nR due to the distributed MIMO configuration formed between mobile users and base station. With a single power feedback channel, the scheduling gain reduces as nT increases, illustrating that transmit diversity hurts the scheduling performance in the case of scalar feedback. Finally, scheduling performance improves as K increases due to the multi-user selection diversity.
Keywords :
MIMO systems; diversity reception; feedback; matrix algebra; mobile radio; optimisation; resource allocation; scheduling; telecommunication channels; MIMO system; link level performance; mobile antennas; multiuser space time scheduling; optimization; receive antennas; resource allocation strategy; scaler rate-feedback channel; transmit antennas; transmit diversity; water-filling strategy; wireless communications; Base stations; Communication channels; Feedback; MIMO; Mobile antennas; Optimal scheduling; Receiving antennas; Resource management; Transmitters; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicular Technology Conference, 2002. Proceedings. VTC 2002-Fall. 2002 IEEE 56th
ISSN :
1090-3038
Print_ISBN :
0-7803-7467-3
Type :
conf
DOI :
10.1109/VETECF.2002.1040556
Filename :
1040556
Link To Document :
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